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[lttv.git] / ltt / branches / poly / lttv / lttv / filter.h
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9c312311 1/* This file is part of the Linux Trace Toolkit viewer
852f16bb 2 * Copyright (C) 2003-2005 Michel Dagenais and Simon Bouvier-Zappa
9c312311 3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License Version 2 as
6 * published by the Free Software Foundation;
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 * GNU General Public License for more details.
12 *
13 * You should have received a copy of the GNU General Public License
14 * along with this program; if not, write to the Free Software
15 * Foundation, Inc., 59 Temple Place - Suite 330, Boston,
16 * MA 02111-1307, USA.
17 */
18
48f6f3c2 19#ifndef FILTER_H
20#define FILTER_H
21
7e7af7f2 22/*! \file lttv/lttv/filter.h
23 * \brief Defines the core filter of application
24 *
25 * A filter expression consists in nested AND, OR and NOT expressions
26 * involving boolean relation (>, >=, =, !=, <, <=) between event fields and
27 * specific values. It is compiled into an efficient data structure which
28 * is used in functions to check if a given event or tracefile satisfies the
29 * filter.
30 *
31 * The grammar for filters is:
32 *
33 * filter = expression
34 *
35 * expression = "(" expression ")" | "!" expression |
36 * expression "&&" expression | expression "||" expression |
37 * simpleExpression
38 *
39 * simpleExpression = fieldPath op value
40 *
41 * fieldPath = fieldComponent [ "." fieldPath ]
42 *
43 * fieldComponent = name [ "[" integer "]" ]
44 *
45 * value = integer | double | string
46 */
47
48
31452f49 49#include <lttv/traceset.h>
a4c292d4 50#include <lttv/tracecontext.h>
51#include <lttv/state.h>
91ad3f0a 52#include <lttv/module.h>
a4c292d4 53#include <ltt/ltt.h>
7145a073 54#include <ltt/time.h>
a4c292d4 55#include <ltt/event.h>
56
e00d6a24 57/* structures prototypes */
58typedef enum _LttvStructType LttvStructType;
59typedef enum _LttvFieldType LttvFieldType;
60typedef enum _LttvExpressionOp LttvExpressionOp;
61typedef enum _LttvTreeElement LttvTreeElement;
62typedef enum _LttvLogicalOp LttvLogicalOp;
63
64typedef union _LttvFieldValue LttvFieldValue;
65
66typedef struct _LttvSimpleExpression LttvSimpleExpression;
67typedef struct _LttvFilterTree LttvFilterTree;
e00d6a24 68
33e44b82 69#ifndef LTTVFILTER_TYPE_DEFINED
70typedef struct _LttvFilter LttvFilter;
71#define LTTVFILTER_TYPE_DEFINED
72#endif
e00d6a24 73
80f9611a 74/**
7e7af7f2 75 * @enum _LttvStructType
80f9611a 76 * @brief The lttv structures
77 *
78 * the LttvStructType enumerates
79 * the possible structures for the
80 * lttv core filter
81 */
82enum _LttvStructType {
7e7af7f2 83 LTTV_FILTER_TRACE, /**< trace (LttTrace) */
84 LTTV_FILTER_TRACESET, /**< traceset */
85 LTTV_FILTER_TRACEFILE, /**< tracefile (LttTracefile) */
86 LTTV_FILTER_EVENT, /**< event (LttEvent) */
87 LTTV_FILTER_STATE /**< state (LttvProcessState) */
e00d6a24 88};
80f9611a 89
150f0d33 90/**
7e7af7f2 91 * @enum _LttvFieldType
80f9611a 92 * @brief Possible fields for the structures
150f0d33 93 *
94 * the LttvFieldType enum consists on
95 * all the hardcoded structures and
96 * their appropriate fields on which
97 * filters can be applied.
98 */
99enum _LttvFieldType {
7e7af7f2 100 LTTV_FILTER_TRACE_NAME, /**< trace.name (char*) */
101 LTTV_FILTER_TRACEFILE_NAME, /**< tracefile.name (char*) */
102 LTTV_FILTER_STATE_PID, /**< state.pid (guint) */
103 LTTV_FILTER_STATE_PPID, /**< state.ppid (guint) */
104 LTTV_FILTER_STATE_CT, /**< state.creation_time (double) */
105 LTTV_FILTER_STATE_IT, /**< state.insertion_time (double) */
106 LTTV_FILTER_STATE_P_NAME, /**< state.process_name (char*) */
107 LTTV_FILTER_STATE_EX_MODE, /**< state.execution_mode (LttvExecutionMode) */
108 LTTV_FILTER_STATE_EX_SUBMODE, /**< state.execution_submode (LttvExecutionSubmode) */
109 LTTV_FILTER_STATE_P_STATUS, /**< state.process_status (LttvProcessStatus) */
110 LTTV_FILTER_STATE_CPU, /**< state.cpu (?last_cpu?) */
111 LTTV_FILTER_EVENT_NAME, /**< event.name (char*) */
112 LTTV_FILTER_EVENT_CATEGORY, /**< FIXME: not implemented */
113 LTTV_FILTER_EVENT_TIME, /**< event.time (double) */
114 LTTV_FILTER_EVENT_TSC, /**< event.tsc (double) */
115 LTTV_FILTER_EVENT_FIELD, /**< dynamic field, specified in core.xml */
116 LTTV_FILTER_UNDEFINED /**< undefined field */
e00d6a24 117};
91ad3f0a 118
84a333d6 119/**
7e7af7f2 120 * @enum _LttvExpressionOp
56e29124 121 * @brief Contains possible operators
122 *
123 * This enumeration defines the
124 * possible operator used to compare
125 * right and left member in simple
126 * expression
84a333d6 127 */
e00d6a24 128enum _LttvExpressionOp
84a333d6 129{
7e7af7f2 130 LTTV_FIELD_EQ, /**< equal */
131 LTTV_FIELD_NE, /**< not equal */
132 LTTV_FIELD_LT, /**< lower than */
133 LTTV_FIELD_LE, /**< lower or equal */
134 LTTV_FIELD_GT, /**< greater than */
135 LTTV_FIELD_GE /**< greater or equal */
e00d6a24 136};
84a333d6 137
56e29124 138/**
7e7af7f2 139 * @union _LttvFieldValue
56e29124 140 * @brief Contains possible field values
7e7af7f2 141 *
56e29124 142 * This particular union defines the
143 * possible set of values taken by the
144 * right member of a simple expression.
145 * It is used for comparison whithin the
146 * 'operators' functions
147 */
e00d6a24 148union _LttvFieldValue {
7e7af7f2 149 guint64 v_uint64; /**< unsigned int of 64 bytes */
150 guint32 v_uint32; /**< unsigned int of 32 bytes */
151 guint16 v_uint16; /**< unsigned int of 16 bytes */
2ec11087 152 guint16 v_uint; /**< unsigned int */
7e7af7f2 153 double v_double; /**< double */
154 char* v_string; /**< string */
155 LttTime v_ltttime; /**< LttTime */
e00d6a24 156};
56e29124 157
150f0d33 158/**
7e7af7f2 159 * @enum _LttvTreeElement
150f0d33 160 * @brief element types for the tree nodes
161 *
162 * LttvTreeElement defines the possible
163 * types of nodes which build the LttvFilterTree.
2ea36caf 164 */
e00d6a24 165enum _LttvTreeElement {
7e7af7f2 166 LTTV_TREE_IDLE, /**< this node does nothing */
167 LTTV_TREE_NODE, /**< this node contains a logical operator */
168 LTTV_TREE_LEAF /**< this node is a leaf and contains a simple expression */
e00d6a24 169};
f4e9dd16 170
56e29124 171
150f0d33 172/**
7e7af7f2 173 * @struct _LttvSimpleExpression
150f0d33 174 * @brief simple expression structure
175 *
176 * An LttvSimpleExpression is the base
177 * of all filtering operations. It also
178 * populates the leaves of the
179 * LttvFilterTree. Each expression
180 * consists basically in a structure
181 * field, an operator and a specific
182 * value.
183 */
e00d6a24 184struct _LttvSimpleExpression
84a333d6 185{
7e7af7f2 186 gint field; /**< left member of simple expression */
187 gint offset; /**< offset used for dynamic fields */
188 gboolean (*op)(gpointer,LttvFieldValue); /**< operator of simple expression */
189 LttvFieldValue value; /**< right member of simple expression */
e00d6a24 190};
84a333d6 191
150f0d33 192/**
7e7af7f2 193 * @enum _LttvLogicalOp
150f0d33 194 * @brief logical operators
195 *
196 * Contains the possible values taken
197 * by logical operator used to link
198 * simple expression. Values are
199 * AND, OR, XOR or NOT
200 */
e00d6a24 201enum _LttvLogicalOp {
7e7af7f2 202 LTTV_LOGICAL_OR = 1, /**< OR (1) */
203 LTTV_LOGICAL_AND = 1<<1, /**< AND (2) */
204 LTTV_LOGICAL_NOT = 1<<2, /**< NOT (4) */
205 LTTV_LOGICAL_XOR = 1<<3 /**< XOR (8) */
e00d6a24 206};
1a7fa682 207
150f0d33 208/**
7e7af7f2 209 * @struct _LttvFilterTree
210 * @brief The filtering tree
211 *
150f0d33 212 * The filtering tree is used to represent the
213 * expression string in its entire hierarchy
214 * composed of simple expressions and logical
215 * operators
2ea36caf 216 */
e00d6a24 217struct _LttvFilterTree {
7e7af7f2 218 int node; /**< value of LttvLogicalOp */
219 LttvTreeElement left; /**< nature of left branch (node/leaf) */
220 LttvTreeElement right; /**< nature of right branch (node/leaf) */
f4e9dd16 221 union {
7e7af7f2 222 LttvFilterTree* t;
223 LttvSimpleExpression* leaf;
224 } l_child; /**< left branch of tree */
f4e9dd16 225 union {
7e7af7f2 226 LttvFilterTree* t;
227 LttvSimpleExpression* leaf;
228 } r_child; /**< right branch of tree */
e00d6a24 229};
84a333d6 230
31452f49 231/**
7e7af7f2 232 * @struct _LttvFilter
233 * @brief The filter
234 *
150f0d33 235 * Contains a binary tree of filtering options along
236 * with the expression itself.
31452f49 237 */
e00d6a24 238struct _LttvFilter {
7e7af7f2 239 char *expression; /**< filtering expression string */
240 LttvFilterTree *head; /**< tree associated to expression */
e00d6a24 241};
84a333d6 242
56e29124 243/*
244 * Simple Expression
245 */
246LttvSimpleExpression* lttv_simple_expression_new();
247
7e7af7f2 248gboolean lttv_simple_expression_assign_field(GPtrArray* fp, LttvSimpleExpression* se);
91ad3f0a 249
56e29124 250gboolean lttv_simple_expression_assign_operator(LttvSimpleExpression* se, LttvExpressionOp op);
bb87caa7 251
9ab5ebd7 252gboolean lttv_simple_expression_assign_value(LttvSimpleExpression* se, char* value);
253
56e29124 254void lttv_simple_expression_destroy(LttvSimpleExpression* se);
5f185a2b 255
5f185a2b 256
150f0d33 257/*
258 * Logical operators functions
259 */
260
2ec11087 261gboolean lttv_apply_op_eq_uint(const gpointer v1, LttvFieldValue v2);
4d9ff942 262gboolean lttv_apply_op_eq_uint64(const gpointer v1, LttvFieldValue v2);
263gboolean lttv_apply_op_eq_uint32(const gpointer v1, LttvFieldValue v2);
264gboolean lttv_apply_op_eq_uint16(const gpointer v1, LttvFieldValue v2);
265gboolean lttv_apply_op_eq_double(const gpointer v1, LttvFieldValue v2);
266gboolean lttv_apply_op_eq_string(const gpointer v1, LttvFieldValue v2);
c6832b57 267gboolean lttv_apply_op_eq_quark(const gpointer v1, LttvFieldValue v2);
4d9ff942 268gboolean lttv_apply_op_eq_ltttime(const gpointer v1, LttvFieldValue v2);
269
2ec11087 270gboolean lttv_apply_op_ne_uint(const gpointer v1, LttvFieldValue v2);
4d9ff942 271gboolean lttv_apply_op_ne_uint64(const gpointer v1, LttvFieldValue v2);
272gboolean lttv_apply_op_ne_uint32(const gpointer v1, LttvFieldValue v2);
273gboolean lttv_apply_op_ne_uint16(const gpointer v1, LttvFieldValue v2);
274gboolean lttv_apply_op_ne_double(const gpointer v1, LttvFieldValue v2);
275gboolean lttv_apply_op_ne_string(const gpointer v1, LttvFieldValue v2);
c6832b57 276gboolean lttv_apply_op_ne_quark(const gpointer v1, LttvFieldValue v2);
4d9ff942 277gboolean lttv_apply_op_ne_ltttime(const gpointer v1, LttvFieldValue v2);
278
2ec11087 279gboolean lttv_apply_op_lt_uint(const gpointer v1, LttvFieldValue v2);
4d9ff942 280gboolean lttv_apply_op_lt_uint64(const gpointer v1, LttvFieldValue v2);
281gboolean lttv_apply_op_lt_uint32(const gpointer v1, LttvFieldValue v2);
282gboolean lttv_apply_op_lt_uint16(const gpointer v1, LttvFieldValue v2);
283gboolean lttv_apply_op_lt_double(const gpointer v1, LttvFieldValue v2);
284gboolean lttv_apply_op_lt_ltttime(const gpointer v1, LttvFieldValue v2);
285
2ec11087 286gboolean lttv_apply_op_le_uint(const gpointer v1, LttvFieldValue v2);
4d9ff942 287gboolean lttv_apply_op_le_uint64(const gpointer v1, LttvFieldValue v2);
288gboolean lttv_apply_op_le_uint32(const gpointer v1, LttvFieldValue v2);
289gboolean lttv_apply_op_le_uint16(const gpointer v1, LttvFieldValue v2);
290gboolean lttv_apply_op_le_double(const gpointer v1, LttvFieldValue v2);
291gboolean lttv_apply_op_le_ltttime(const gpointer v1, LttvFieldValue v2);
292
2ec11087 293gboolean lttv_apply_op_gt_uint(const gpointer v1, LttvFieldValue v2);
4d9ff942 294gboolean lttv_apply_op_gt_uint64(const gpointer v1, LttvFieldValue v2);
295gboolean lttv_apply_op_gt_uint32(const gpointer v1, LttvFieldValue v2);
296gboolean lttv_apply_op_gt_uint16(const gpointer v1, LttvFieldValue v2);
297gboolean lttv_apply_op_gt_double(const gpointer v1, LttvFieldValue v2);
298gboolean lttv_apply_op_gt_ltttime(const gpointer v1, LttvFieldValue v2);
299
2ec11087 300gboolean lttv_apply_op_ge_uint(const gpointer v1, LttvFieldValue v2);
4d9ff942 301gboolean lttv_apply_op_ge_uint64(const gpointer v1, LttvFieldValue v2);
302gboolean lttv_apply_op_ge_uint32(const gpointer v1, LttvFieldValue v2);
303gboolean lttv_apply_op_ge_uint16(const gpointer v1, LttvFieldValue v2);
304gboolean lttv_apply_op_ge_double(const gpointer v1, LttvFieldValue v2);
305gboolean lttv_apply_op_ge_ltttime(const gpointer v1, LttvFieldValue v2);
150f0d33 306
307/*
308 * Cloning
309 */
310
4d9ff942 311LttvFilterTree* lttv_filter_tree_clone(const LttvFilterTree* tree);
150f0d33 312
4d9ff942 313LttvFilter* lttv_filter_clone(const LttvFilter* filter);
150f0d33 314
56e29124 315/*
316 * LttvFilter
150f0d33 317 */
5f185a2b 318LttvFilter *lttv_filter_new();
319
320gboolean lttv_filter_update(LttvFilter* filter);
48f6f3c2 321
2ea36caf 322void lttv_filter_destroy(LttvFilter* filter);
1da1525d 323
da2e1bfb 324gboolean lttv_filter_append_expression(LttvFilter* filter, const char *expression);
80f9611a 325
326void lttv_filter_clear_expression(LttvFilter* filter);
327
56e29124 328/*
329 * LttvFilterTree
330 */
150f0d33 331LttvFilterTree* lttv_filter_tree_new();
332
333void lttv_filter_tree_destroy(LttvFilterTree* tree);
334
80f9611a 335gboolean lttv_filter_tree_parse(
4d9ff942 336 const LttvFilterTree* t,
337 const LttEvent* event,
338 const LttTracefile* tracefile,
339 const LttTrace* trace,
4d9ff942 340 const LttvTracefileContext* context);
341
342gboolean lttv_filter_tree_parse_branch(
343 const LttvSimpleExpression* se,
344 const LttEvent* event,
345 const LttTracefile* tracefile,
346 const LttTrace* trace,
347 const LttvProcessState* state,
348 const LttvTracefileContext* context);
48f6f3c2 349
80f9611a 350/*
351 * Debug functions
352 */
72911c5d 353void lttv_print_tree(const LttvFilterTree* t, const int count);
80f9611a 354
48f6f3c2 355#endif // FILTER_H
356
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